Equality Saturation Guided by Large Language Models
November 01, 2025 Β· Declared Dead Β· π arXiv.org
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Authors
Wentao Peng, Ruyi Ji, Yingfei Xiong
arXiv ID
2511.00403
Category
cs.PL: Programming Languages
Citations
0
Venue
arXiv.org
Last Checked
4 months ago
Abstract
One critical issue with large language models (LLMs) is their inability to guarantee correctness. Although this problem can be addressed by applying LLMs to formal rewrite systems, current LLMs are still far from adequate to generate sound rewrite chains. To bridge this gap, this paper proposes LLM-guided equality saturation, dubbed LGuess, by incorporating e-graphs as an intermediate layer between LLMs and rewrite systems. LGuess queries LLMs only for high-level rewrite checkpoints and uses e-graphs to supply low-level rewrite chains between these checkpoints. The key technical challenge in this procedure lies in effectively extracting a suitable checkpoint from a saturated e-graph, which LGuess addresses by learning a probabilistic model from the LLM. The model predicts probable checkpoints while remaining simple enough for effective extraction. We implement a prototype of LGuess and evaluate it on the problem of factorizing multivariable polynomials. The results demonstrate a significant advantage of LGuess compared to both straightforward equality saturation and the approach that queries the LLM directly for the rewrite chain.
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